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Wanhua Wu

Researcher at Sichuan University

Publications -  122
Citations -  6798

Wanhua Wu is an academic researcher from Sichuan University. The author has contributed to research in topics: Photon upconversion & Excited state. The author has an hindex of 40, co-authored 100 publications receiving 5512 citations. Previous affiliations of Wanhua Wu include West China Medical Center of Sichuan University & Dalian University of Technology.

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Long‐Lived Room‐Temperature Deep‐Red‐Emissive Intraligand Triplet Excited State of Naphthalimide in Cyclometalated IrIII Complexes and its Application in Triplet‐Triplet Annihilation‐Based Upconversion

TL;DR: The results will be useful for designing visible-light-harvesting transition-metal complexes and for their applications as triplet photosensitizers for photocatalysis, photovoltaics, TTA upconversion, etc.
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Correction: Room-temperature phosphorescent γ-cyclodextrin-cucurbit[6]uril-cowheeled [4]rotaxanes for specific sensing of tryptophan

TL;DR: The strong green RTP was quenched exclusively by Trp while no RTP quenching was observed with other major physiological amino acids or with the Trp-containing protein HSA, demonstrating a highly specific sensing of free Trp.
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Photocatalytic Supramolecular Enantiodifferentiating Dimerization of 2-Anthracenecarboxylic Acid through Triplet-Triplet Annihilation.

TL;DR: Visible-light-driven enantiodifferentiating photodimerization of 2-anthracenecarboxylic acid sensitized by Schiff base Pt(II) complex-grafted γ-cyclodextrins leads the first triplet-triplet annihilation-based catalytic photochirogenesis.
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Observation of Room‐Temperature Deep‐Red/Near‐IR Phosphorescence of Pyrene with Cycloplatinated Complexes: An Experimental and Theoretical Study

TL;DR: In this article, the pyrene-containing cyclometallated Pt" complexes, with pyrene moiety attached to a 2-phenylpyridine (ppy) ligand through a C-C (Pt-2) or C=C bond, have been prepared.
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Inherently Chiral Azonia[6]helicene-Modified β-Cyclodextrin: Synthesis, Characterization, and Chirality Sensing of Underivatized Amino Acids in Water

TL;DR: The (P)- and (M)-3-azonia[6]helicenyl β-cyclodextrins exhibit L/D selectivities and P/M preferences of up to 28.2 upon complexation with underivatized proteinogenic amino acids in aqueous solution at pH 7.3.